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Spark plasma sintering of microwave processed nanocrystalline barium titanate and their characterisations

机译:微波处理纳米晶钛酸钡的火花等离子体烧结及其表征

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Nanocrystalline barium titanate (BT) was synthesized by the high-energy planetary mill assisted novel hybrid processing methodology. As-milled precursors were microwave calcined and subsequently sintered by spark plasma sintering (SPS). Powders were characterised by XRD, laser Raman spectroscopy, BET and TEM techniques. Microstructure, purity, thermal stability and dielectric characteristics of the sintered BT were analyzed using FE-SEM, EDX, TGA and LCZ meter. Nanocrystalline nature of BT was evident from the enhanced peak broadening noticed in the XRD pattern and from the TEM image. Raman spectra corroborated well with the XRD results. FE-SEM image revealed a fairly dense and uniform microstructure, which was attributed to the high reactivity and needle shaped morphology of the mechanically activated microwave calcined powders, which showed a surface area of about 20 m~2 g~(-1). Microwave calcined SPS processed BT showed a thermal stability of 99.5% as evident from the thermo-gravimetric analysis. Superior dielectric response was shown by the hybrid processed BT which is highly suitable for capacitor applications.
机译:纳米晶钛酸钡(BT)是通过高能行星磨辅助的新型混合加工方法合成的。将研磨后的前体进行微波煅烧,然后通过火花等离子体烧结(SPS)进行烧结。通过XRD,激光拉曼光谱,BET和TEM技术对粉末进行表征。使用FE-SEM,EDX,TGA和LCZ测量仪分析了烧结BT的微观结构,纯度,热稳定性和介电特性。从XRD图谱和TEM图像中发现的增强的峰展宽可以明显看出BT的纳米晶体性质。拉曼光谱与XRD结果得到很好的证实。 FE-SEM图像显示出相当致密且均匀的微观结构,这归因于机械活化的微波煅烧粉末的高反应性和针状形态,其表面积约为20 m〜2 g〜(-1)。由热重分析表明,经微波煅烧的SPS处理的BT表现出99.5%的热稳定性。混合处理的BT表现出优异的介电响应,非常适合电容器应用。

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